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_data/authors.yml

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url: https://orcid.org/0000-0001-7826-5525
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David Leep:
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name : "David Leep"
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bio : "Undergraduate Researcher, Oregon State University"
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avatar : "/assets/bio/bio-photo.jpg"
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links:
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- label: "Email"
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icon: "fas fa-fw fa-envelope-square"
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url: "mailto:leepd@oregonstate.edu"
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Ryan McClarren:
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name : "Ryan McClarren"
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bio : "Predictive Science Colead & Deputy Center Director, University of Notre Dame: ME Dept."

_members/charles_goodman.md

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_members/david_leep.md

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---
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title: "David Leep"
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excerpt: "Undergraduate Researcher, Oregon State University"
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classes: wide
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header:
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teaser: assets/bio/bio-photo.jpg
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author: David Leep
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---
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## Biography
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At CEMeNT, David is working on developing a translation function to convert OpenMC input files into MC/DC compatible base-line code for user configuration. This allows for a quick and easy conversion of OpenMC systems into MC/DC counterparts, useful for comparison between applications and learning MC/DC formatting.

_members/joanna_morgan.md

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## Biography
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At CEMeNT Joanna works on research to enable Python to run at Exascale using hardware code generating libraries. She is Dr. Niemeyer's lab (NRG) and is currently on a co/op at Advanced Micro Devices (AMD) where she is adding ROCm compute capabilities to MC/DC. She also works in researching novel deterministic dynamic transport methods for GPU applications.
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At CEMeNT Joanna works on research to enable Python to run at Exascale on both CPUs and GPUs. She is also in Dr. Niemeyer's lab (NRG) and is currently on a co/op at Advanced Micro Devices (AMD) where she is adding ROCm compute capabilities to MC/DC. She also works in researching novel deterministic dynamic transport methods for GPU applications.
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She has previously worked at Los Alamos National Lab on adding delta tracking to a production Monte Carlo neutron transport code MCATK and researched novel variance reduction techniques for MC TRT applications. Before joining the center Joanna had previously worked at Argonne and Thomas Jefferson National Labs on particle accelerator magnet analysis.
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_pages/mcdc.md

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[<i class='fa fa-book fa-fw'></i> Read the Docs](https://cement-psaapgithubio.readthedocs.io/en/latest/){: .btn .btn--primary .btn--x-large}
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[<i class='fa fa-newspaper'></i> M&C Intro Paper](https://arxiv.org/abs/2305.07636){: .btn .btn--primary .btn--x-large}
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Monte Carlo Dynamic code is the primary deliverable for the Center.
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Monte Carlo / Dynamic Code (MC/DC) is the primary deliverable for our center.
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It includes novel transport methods focused for transient neutron transport as well as an acceleration and abstraction software engineering scheme to make MC/DC a platform for rapid methods development in the felid.
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While MC/DC is where we deploy our novel algorithms and rapidly develop numerical methods for transient transport it is also intended to live beyond the length of the center.
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It includes a full testing library (unit, regression, verification, performance), continuous integration (via GitHub actions and chron jobs), issue tracking, documentation site, and published PR and contribution process.

_pages/publications.md

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* [K. B. Clements](../members/kayla_clements/), G. Geraci, and A. J. Olson. “Numerical Investigation on the Performance of a Variance Deconvolution Estimator.” In *American Nuclear Society Annual Meeting*. Anaheim, California, United States (2022).
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* [D. Y. Anistratov](../members/dmitriy_anistratov) Analysis of Noise Effects in Hybrid Transport Methods Based on Low-Order Moment Equations The 27th International Conference on Transport Theory (ICTT27), Bertinoro, Italy, July 10-16, 2022.
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* [D. Y. Anistratov](../members/dmitriy_anistratov). Analysis of Noise Effects in Hybrid Transport Methods Based on Low-Order Moment Equations The 27th International Conference on Transport Theory (ICTT27), Bertinoro, Italy, July 10-16, 2022.
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* [I. Variansyah](../members/ilham_variansyah/) and [R. G. McClarren](../members/ryan_mcclarren/). “Performance of Population Control Techniques in Monte Carlo Reactor Criticality Simulation.” In *International Conference on Physics of Reactors*. Pittsburgh, Pennsylvania, USA (2022).
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# Presentations
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* [J. P. Morgan](../members/joanna_morgan/), [I. Variansyah](../members/ilham_variansyah/), [T. S. Palmer](../members/todd_palmer/), and [K. E. Niemeyer](../members/kyle_niemeyer/). Exploring One-Cell Inversions for Transient Transport on GPUs. *18th Copper Mountain Conference On Iterative Methods*. Copper Mtn., CO, USA. (April 2024). [Available](https://doi.org/10.5281/zenodo.10207764)
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* [C. T. Kelley](../members/ct_kelley/). Newton's Method in Three Precisions. *18th Copper Mountain Conference On Iterative Methods*. Copper Mtn., CO, USA. (April 2024).
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* [J. P. Morgan](../members/joanna_morgan/), [I. Variansyah](../members/ilham_variansyah/), [B. Cuneo](../members/braxton_cuneo/), [T. S. Palmer](../members/todd_palmer/), and [K. E. Niemeyer](../members/kyle_niemeyer/). High Performance Python for Rapid Methods Development in Monte Carlo / Dynamic Code. *3rd Scientific Software Sustainability Conference (S3C) at National Laboratories Information Technology (NLIT) Summit*. Seattle, WA, USA (April 2024). [Available](https://doi.org/10.5281/zenodo.10207764)
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* [D. Y. Anistratov](../members/dmitriy_anistratov). Stability Analysis of Two-Level Nonlinear Acceleration Method for the Linear Boltzmann Transport Equation. *18th Copper Mountain Conference On Iterative Methods*. Copper Mtn., CO, USA. (April 2024).
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* [J. P. Morgan](../members/joanna_morgan/), [I. Variansyah](../members/ilham_variansyah/), [T. S. Palmer](../members/todd_palmer/), and [K. E. Niemeyer](../members/kyle_niemeyer/). Exploring One-Cell Inversions for Transient Transport on GPUs. *18th Copper Mountain Conference On Iterative Methods*. Copper Mtn., CO, USA. (April 2024).
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* [B. Cuneo](../members/braxton_cuneo/). Abstracting and Accelerating GPU Processing through an Async Programming Interface. *3rd Scientific Software Sustainability Conference (S3C) at National Laboratories Information Technology (NLIT) Summit*. Seattle, WA, USA (April 2024).
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* [J. P. Morgan](../members/joanna_morgan/), [I. Variansyah](../members/ilham_variansyah/), [B. Cuneo](../members/braxton_cuneo/), [T. S. Palmer](../members/todd_palmer/), and [K. E. Niemeyer](../members/kyle_niemeyer/). High Performance Python for Rapid Methods Development in Monte Carlo / Dynamic Code. *3rd Scientific Software Sustainability Conference (S3C) at National Laboratories Information Technology (NLIT) Summit*. Seattle, WA, USA (April 2024). [Available](https://zenodo.org/doi/10.5281/zenodo.10961826)
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* [J. P. Morgan](../members/joanna_morgan/), [I. Variansyah](../members/ilham_variansyah/), [B. Cuneo](../members/braxton_cuneo/), [T. S. Palmer](../members/todd_palmer/), and [K. E. Niemeyer](../members/kyle_niemeyer/). Acceleration and Abstraction of Python based Monte Carlo Compute Kernels for Heterogeneous machines via Numba. *NUWEST*, Albuquerque, NM <small> unable to attend due to weather.
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# Poster Presentations
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* [J. P. Morgan](../members/joanna_morgan/), [I. Variansyah](../members/ilham_variansyah/), [T. S. Palmer](../members/todd_palmer/), and [K. E. Niemeyer](../members/kyle_niemeyer/). “Exploring One-Cell Inversion Method for Transient Transport on GPU.” High Energy Density Summer School, San Diego, California. (July 2023) DOI [10.5281/zenodo.10515702](https://doi.org/10.5281/zenodo.10515702)
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* [J. P. Morgan](../members/joanna_morgan/), T. J. Trahan, T. P. Burke, C. J. Josey, and [K. E. Niemeyer](../members/kyle_niemeyer/). “Hybrid-Delta Tracking on a Structured Mesh in MCATK.” International Conference on Mathematics and Computational Methods Applied to Nuclear Science and Engineering. Niagara Falls, Ontario, Canada (August 2023). DOI [10.5281/zenodo.10511913](https://doi.org/10.5281/zenodo.10511913)
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* [J. P. Morgan](../members/joanna_morgan/), [I. Variansyah](../members/ilham_variansyah/), [T. S. Palmer](../members/todd_palmer/), and [K. E. Niemeyer](../members/kyle_niemeyer/). “Exploring One-Cell Inversion Method for Transient Transport on GPU.” High Energy Density Summer School, San Diego, California. (July 2023) DOI [10.5281/zenodo.10515702](https://doi.org/10.5281/zenodo.10515702).
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* [K. B. Clements](../members/kayla_clements/), G. Geraci, & A. Olson. A Variance Deconvolution Approach to Uncertainty Quantification for Monte Carlo Radiation Transport. Society for Industrial and Applied Mathematics Conference on Uncertainty Quantification (SIAM UQ22), Atlanta, Georgia (Hybrid virtual). (April 2022) DOI. [10.5678/1234321](https://doi.org/10.5678/1234321)

docs/assets/js/lunr/lunr-store.js

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<a href="/members/charles_goodman/" rel="permalink">Charles Goodman
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<a href="/members/ct_kelley/" rel="permalink">C.T. Kelley
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<p class="archive__item-excerpt" itemprop="description">Graduate Student, North Carolina State University
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<p class="archive__item-excerpt" itemprop="description">Researcher in Hybrid Methods, North Carolina State University
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<p class="archive__item-excerpt" itemprop="description">Researcher in Hybrid Methods, North Carolina State University
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<p class="archive__item-excerpt" itemprop="description">Undergraduate Researcher, Oregon State University
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<p class="archive__item-excerpt" itemprop="description">Researcher in Hybrid Methods, North Carolina State University
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